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Effect of dietary fish oil on development and selected functions of murine inflammatory macrophages
N E Hubbard1, S D Somers, K L Erickson
1Department of Cell Biology and Human Anatomy, School of Medicine, University of California, Davis 95616.
Abstract:
Inflammatory macrophages from mice fed diets containing menhaden fish oil (MFO) have a reduced capacity for cytotoxicity of mastocytoma cells upon activation with interferon-gamma (IFN gamma) and lipopolysaccharide due to an altered responsiveness to IFN gamma. In an effort to elucidate further how dietary MFO effects macrophage function, we have studied the maturation of inflammatory macrophages from mice fed MFO compared with mice fed safflower oil (SFO) using several processes that serve as markers of the activational state. No significant differences in the recruitment or percentage of peritoneal exudate cells as macrophages after thioglycollate injection and no differences in spreading, binding, or phagocytosis of sheep erythrocytes or phagocytosis of yeast by inflammatory macrophages were observed when the dietary groups were compared. However, MFO macrophages had an altered capacity for peroxide release when stimulated with unopsonized zymosan (10-200 micrograms/ml). Furthermore, to elucidate how MFO feeding could alter IFN gamma-induced responses of inflammatory macrophages, we assessed phorbol-12-myristate-13-acetate-induced hydrogen peroxide production and expression of class II MHC determinants (Ia). There were no differences between macrophages from mice fed the two diets with respect to the production of peroxide when they were preincubated with 0.1-10 U/ml of IFN gamma. However, MFO macrophages had greater peroxide production after enhancement with 100 U/ml of IFN gamma. With respect to Ia induction, the percentage of macrophages responding to IFN gamma was not altered by diet, and there were no differences in expression of Ia induced by 24 hr exposure to IFN gamma. Thus the differential effect of MFO compared with SFO is probably mediated not by an alteration in the maturation of inflammatory macrophages but rather through the alteration of IFN gamma-induced functions such as peroxide production.
Insights
Dietary menhaden fish oil (MFO) alters inflammatory macrophage function, reducing cytotoxicity and increasing peroxide release. This suggests MFO impacts immune responses through modified interferon-gamma (IFN gamma)-induced functions, not macrophage maturation.
Area of Science:
- Immunology
- Nutrition Science
- Cell Biology
Background:
- Dietary lipids can modulate immune cell function.
- Menhaden fish oil (MFO) is rich in omega-3 fatty acids, while safflower oil (SFO) is rich in omega-6 fatty acids.
- Inflammatory macrophages play a critical role in immune responses.
Purpose of the Study:
- To investigate how dietary menhaden fish oil (MFO) affects the maturation and function of inflammatory macrophages.
- To compare the effects of MFO versus safflower oil (SFO) on macrophage activation markers and responses to interferon-gamma (IFN gamma).
Main Methods:
- Mice were fed either MFO or SFO diets.
- Inflammatory macrophages were elicited using thioglycollate injection.
- Macrophage functions including cytotoxicity, phagocytosis, peroxide release, and class II MHC (Ia) determinant expression were assessed.
- Responses to IFN gamma stimulation were evaluated.
Main Results:
- No significant differences in macrophage recruitment, spreading, binding, or phagocytosis were observed between MFO and SFO groups.
- MFO-fed macrophages exhibited altered peroxide release upon stimulation with zymosan.
- MFO macrophages showed enhanced peroxide production following high-dose IFN gamma stimulation.
- Diet did not alter IFN gamma-induced Ia expression or the percentage of responding macrophages.
Conclusions:
- Dietary MFO does not significantly alter the maturation of inflammatory macrophages.
- MFO influences macrophage function primarily through altered IFN gamma-induced responses, particularly peroxide production.
- These findings highlight the impact of dietary fats on immune cell effector functions.